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Efficient hydrogen production from aqueous methanol in a PEM electrolyzer with porous metal flow field: Influence of change in grain diameter and material of porous metal flow field

机译:在具有多孔金属流场的PEM电解槽中由甲醇水溶液有效制氢:粒径和多孔金属流场材料变化的影响

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Previous research has shown that hydrogen production performance of a PEM methanol electrolyzer was largely improved with a porous flow field made of sintered spherical metal powder compared with a conventional groove type flow field. In this study, we experimentally investigated the effect of the change in grain diameter and material of the porous metal flow field on hydrogen production performance in a PEM methanol electrolyzer cell. The experimental results indicated that the hydrogen production performance of the electrolyzer cell was improved by reducing the grain diameter. This could be mainly attributed to the lower interfacial contact resistance by reducing the grain diameter of the porous metal flow field. For investigating the influence of material, cell performances with a stainless steel and a nickel base alloy were compared.
机译:先前的研究表明,与传统的槽型流场相比,由烧结球形金属粉末制成的多孔流场大大提高了PEM甲醇电解器的制氢性能。在这项研究中,我们实验研究了粒径和多孔金属流场材料的变化对PEM甲醇电解池中制氢性能的影响。实验结果表明,通过减小晶粒直径可以提高电解槽的制氢性能。这主要归因于通过减小多孔金属流场的粒径而降低的界面接触电阻。为了研究材料的影响,比较了不锈钢和镍基合金的电池性能。

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